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Decadal drought deaccelerated the increasing trend of annual net primary production in tropical or subtropical forests in southern China

机译:十年来的干旱减缓了中国南方热带或亚热带森林年净初级生产力的增长趋势

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摘要

Previous investigations have identified that the effects of climate change on net primary production (NPP) of global forests have varied both spatially and temporally, and that warming has increased the NPP for many forests. However, other factors, such as available soil water for plant growth, could limit these incremental responses to warming. In our investigation we have quantified the responses of NPP of tropical or subtropical forests in southern China to warming and drought stress over the past three decades (1981 to 2012) using data from five forest research stations and satellite measurements. NPP, mean annual temperature (MAT) and annual days without rainfall showed an increase of 0.076 g C m−2 a−2 (standardized), 0.057 °C a−1 (standardized) and 0.067 d a−1 (standardized) during the study period, respectively. However, incremental NPP was deaccelerated at a rate of approximately 20.8% per decade. This deacceleration was primarily caused by a decrease in available soil water which resulted from warming (mainly occurring in winter and autumn) and the changes in rainfall pattern. The result indicates that intensifying drought stress would limit future increases of forest NPP in southern China.
机译:先前的调查已经确定,气候变化对全球森林的净初级生产(NPP)的影响在空间和时间上都有变化,而且变暖增加了许多森林的NPP。但是,其他因素(例如可用于植物生长的土壤水)可能会限制这些对变暖的增量响应。在我们的调查中,我们使用来自五个森林研究站的数据和卫星测量数据,量化了过去三十年(1981年至2012年)中国南部热带或亚热带森林的NPP对变暖和干旱胁迫的响应。 NPP,年平均气温(MAT)和无降雨的年日数显示增加0.076 g C m -2 a -2 (标准),0.057°C a -1 (标准化)和0.067 da -1 (标准化)。但是,增加的NPP以每十年约20.8%的速度减缓。这种减速度主要是由于变暖(主要发生在冬季和秋季)和降雨方式的变化导致可用土壤水的减少。结果表明,干旱胁迫加剧将限制中国南方森林NPP的未来增长。

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